Japanese Patent Application No. 2010-155018 filed on Jul. 7, 2010 serving as base of the priority claims in the present application is included in disclosure by reference.
The present invention relates to an electronic device such as projector, digital photo frame, or digital camera having a device body in which a light-emitting unit and/or a light incident unit are arranged.
In an electronic device of this type, a light-emitting unit is an image display unit such as an optical projection lens arranged in a projector or a liquid display panel which is provided in a digital photo frame. Also, the light incident unit is an optical photographing lens arranged in a digital camera. Conventionally, in these electronic devices, when the device body is placed on a horizontally extending mounting surface in a normal position, the optical axis of the optical lens and the screen of an image display unit are normally set in a horizontal direction.
However, in the projector, when the device body is placed on the mounting surface in a normal position, part of the image projected from the optical lens onto the screen may be disadvantageously blocked by the mounting surface. In an electronic device such as a digital photo frame having an image display unit, when the device body is placed on the mounting surface in a normal position, the image projected on the screen of the image display unit is hardly visible to the user.
Therefore, conventionally, independently from the electronic device, a support table such as a cradle or a stand that can change the position of the device body is provided, and the device body is attached to the support table to change the position of the device body.
The electronic device according to the present invention includes a device body, a light-emitting unit and/or a light incident unit in the main surface serving as a front surface or a rear surface of the device body, also a position changing mechanism to change the mounting position of the device body is provided on the bottom surface of the device body. In this case, an opening is formed on the bottom surface of the device body, a seesaw member is slidingly supported on an internal peripheral surface of the opening by a pivot extending almost parallel to both the main surface and the bottom surface, and the seesaw member is slid around the pivot to make it possible to change the state of the seesaw member between a storing state in which both end portions of the seesaw member are stored in the opening and a projecting state in which the first end portion, of both end portions, opposing the main surface is deeply buried in the opening and the second end portion on the main surface side projects from the bottom surface of the device body. On the other hand, in the device body and/or the seesaw member, a restraint mechanism to stop the seesaw member with in projecting state and a release mechanism to release the seesaw member in the projecting state, are provided. The position changing mechanism includes the seesaw member, the restraint mechanism, and the release mechanism.
A mode in which the present invention is applied to a portable projector will be described below in detail with reference to the accompanying drawings.
The optical projecting unit 21 includes an optical lens 210 to emit light that forms a projected image, and the light-emitting surface 211 of the optical lens exposed on the front surface 11 of the device body 1. As shown in
In this case, on the bottom surface 140 of the opening 14, a first surface area 141 with which the first end portion 31 of the seesaw member 3 is brought into contact when the seesaw member 3 is pivoted to cause the state thereof to shift to the projecting state, and a second surface region 142 with which the second end portion 32 of the seesaw member 3 is brought into contact when the seesaw member 3 is pivoted to cause the state thereof to shift to the storing state, are formed. The first surface area 141 and the second surface region 142 regulate a pivotal range of the seesaw member 3.
As shown in
In this case, as shown in
On the bottom surface of the housing portion 33, one pair of bump portions 335 are formed in position on both the left and right sides of the projection 4. On the projection 4, a first contact surface 44 that is brought into contact with the bump portions 335 to regulate the advanced position of the projection 4 when the projection 4 is moved to the advanced position, is formed. On the projection 4, on an opposite surface of a distal end 40, a second contact surface 45 that is brought into contact with the pivot 30 when the projection 4 is moved to the retired position is further formed. In this manner, the moving range of the projection 4 is regulated.
In this case, the plate member 43 has dimensions and/or a shape such that a part of the plate member always faces the pivot 30. The second contact surface 45 has a position and/or a shape such that the distal end portion of the projection 4 continuously penetrates the opening 333 even though the second contact surface 45 is brought into contact with the pivot 30. Therefore, the projection 4 fixed to the plate member 43 does not drop out of the seesaw member 3.
As shown in
In the embodiment, on the internal peripheral surface of the path 41, projecting portions 42 and 340 are formed on the end face of the projection 4 on the distal end 40 side and on the tongue part 34, respectively, and the projecting portions 42 and 340 are inserted into both end portions of the compression coil spring 5. In this manner, the compression coil spring 5 is prevented from dropping out of the seesaw member 3.
On the other hand, as shown in
As shown in
A cam surface 46 is formed on the lower surface of the projection 4. In this case, on the cam surface 46, in the process in which the seesaw member 3 shifts from the storing state to the projecting state, an edge of the engaged portion 15 is relatively slid on the cam surface 46. In this manner, the projection 4 is moved from the advanced position to the retracted position against the biasing force of the compression coil spring 5. In this manner, a cam mechanism is constituted by the cam surface 46 of the projection 4 and the edge of the engaged portion 15. In the process in which the seesaw member 3 shifts from the storing state to the projecting state, the projection 4 moves from the advanced position to the retracted against the biasing force of the compression coil spring 5.
As shown in
In the portable projector, as shown in
When the user presses the first end portion 31 of the seesaw member 3 into the opening 14, the pressing force is converted by operation of the cam mechanism into a force that moves the projection 4 from the advanced position to the retracted position against the biasing force of the compression coil spring 5. Therefore, in the process in which the seesaw member 3 shifts from the storing state to the projecting state, as shown in
Thereafter, the seesaw member 3 is pivoted around the pivot 30, and the first end portion 31 is deeply buried into the opening 14. On the other hand, the second end portion 32 projects from the bottom surface 13 of the device body 1. As a result, the seesaw member 3 shifts from the storing state to the projecting state as shown in
In this case, in the mobile projector, the seesaw member 3 always receives a biasing force that shifts the seesaw member 3 to the storing state from the torsion spring 6. Therefore, the projection 4 is brought into press contact with the edge of the opening 14 by the biasing force of the torsion spring 6. As a result, the seesaw member 3 is prevented from being unstable when the seesaw member 3 is stopped in the projecting state.
On the other hand, the user operates the operating portion 7 to move the projection 4 from the advanced position to the retracted position against the biasing force of the compression coil spring 5 to release the seesaw member 3 in the projecting state. As a result, the seesaw member 3 moves from the projecting state to the storing state.
In this case, in the mobile projector, the seesaw member 3 always receives a biasing force that shifts the seesaw member 3 to the storing state from the torsion spring 6. Therefore, when the seesaw member 3 in the projecting state is released, the seesaw member 3 shifts from the projecting state to the storing state by the biasing force of the torsion spring 6.
In this manner, in the mobile projector, a restraint mechanism to stop the seesaw member 3 in the projecting state and a stopping canceling mechanism to stop the seesaw member 3 in the protecting state are arranged.
In the mobile projector, as shown in
On the other hand, as shown in
In this manner, in the mobile projector, a position changing mechanism to change the mounting position of the device body 1 is arranged. According to the portable projector, a change of the mounting position of the device body 1 can be realized by a simple configuration.
According to the portable projector, when a user only presses the first end portion 31 of the seesaw member 3 into the opening 14, the engagement between the projection 4 of the engaged portion 15 is canceled, the seesaw member 3 shifts from the storing state to the projecting state, and the seesaw member 3 is stopped in the projecting state. Furthermore, when the user only operates the operating portion 7 to release the seesaw member 3 in the projecting state, the seesaw member 3 shifts from the projecting state to the storing state. Therefore, the portable projector has high operability for changing the mounting position of the device body 1.
According to the mobile projector of the modification, the first edge portion 161 and the second edge portion 162 can be brought into contact with each other. Therefore, as shown in
In the mobile projector according to the modification, in an area of the edge of the opening 14 with which the projection 4 is brought into contact, a plurality of steps may be provided to form a plurality of edge portions.
The configurations of the portions of the present invention are not limited to this embodiment, and the configurations can be variously changed without departing from the technical essence and scope of the invention. For example, the restraint mechanism to stop the seesaw member 3 in the projecting state and the release mechanism to release the seesaw member 3 with the projecting state are not limited to the configurations of the embodiment. The mechanisms can also be variously changed without departing from the technical essence and scope of the invention.
The portable projector may have a configuration in which the compression coil spring 5 and/or the torsion spring 6 are not provided. In this case, in the configuration in which the compression coil spring 5 is not provided, moving the projection 4 between the advanced position and the retracted position is executed by operation of the operating portion 7 performed by the user. In the configuration in which the torsion spring 6 is not provided, shifting the seesaw member 3 from the projecting state to the storing state is executed by pressing the second end portion 32 made by the user.
The various configurations of the position changing mechanisms employed in the portable projector can be applied to various electronic devices such as a digital photo frames and a digital cameras having an optical photographic unit. In the digital photo frame, a light-emitting unit is configured by an image display unit such as a liquid crystal display panel mounted on the digital photo frame.
The various configurations of the position changing mechanisms employed in the portable projector can also be applied to various electronic devices each having a light-emitting unit such as a normal digital camera having an optical photographic lens and an electronic device in which a light-emitting unit and/or a light incident unit is arranged on the rear surface of the device body.
Number | Date | Country | Kind |
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2010-155018 | Jul 2010 | JP | national |